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Towards the Reversible Electronic Energy Transfer. Synthesis and characterization of nanohybrid Quantum Dots

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dc.contributor Paniagua, Juan Carlos
dc.contributor Credi, A. (Alberto), 1970-
dc.creator Murria Aranda, Gil
dc.date 2019-02-26T13:38:51Z
dc.date 2021-02-26T06:10:17Z
dc.date 2019-01
dc.date.accessioned 2024-12-16T10:27:19Z
dc.date.available 2024-12-16T10:27:19Z
dc.identifier http://hdl.handle.net/2445/128913
dc.identifier.uri http://fima-docencia.ub.edu:8080/xmlui/handle/123456789/22251
dc.description Treballs Finals de Grau de Química, Facultat de Química, Universitat de Barcelona, Any: 2019, Tutors: Juan Carlos Paniagua, Alberto Credi
dc.description The research presented in this thesis focused on the development of nanohybrids quantum dots for suitable photophysical processes. The supramolecular system consists of an inorganic nanocrystal functionalized with a certain organic chromophore. The photophysical process is based in a bidirectional, that is reversible, energy transfer. For this process to occur, specific energy requirements must be fulfilled, between the emitting state of the nanocrystal and the lowest triplet excited state organic chromophore anchored in its surface. Due to the known value of the energetic state of the organic chromophore, the quantum dot plays a key role. Thanks to the tunability of its photophysical properties regarding the size, it is possible to fulfil this particular synergy. To achieve this objective, CdSe quantum dots functionalized and 2-naphthalene carboxylic acid (2-NCA) were chosen. The nanohybrids were characterized by absorption and luminescence spectroscopy. According to different ratios of ligands, it was possible to modulate the size of different batches of nanoparticles therefore, synthesizing a suitable nanoparticle for the scope of the thesis. However, the intrinsic instability of the sample regarding the extremely small size led to the impossibility of a comparison between functionalized and non-functionalized the nanoparticle because they no longer presented the same photophysical properties. Despite this, it was possible to verify the presence of the reversible energy transfer through the comparison of the same sample functionalized in deaerated and air-equilibrated conditions. Given that, in deaerated conditions, the nanohybrids showed a higher luminescence intensity in the time-gated detection and a longer luminescence decay in the time scale than the nanohybrids in air-equilibrated conditions
dc.format 56 p.
dc.format application/pdf
dc.language eng
dc.rights cc-by-nc-nd (c) Murria, 2019
dc.rights http://creativecommons.org/licenses/by-nc-nd/3.0/es/
dc.rights info:eu-repo/semantics/openAccess
dc.source Treballs Finals de Grau (TFG) - Química
dc.subject Nanotecnologia
dc.subject Transferència d'energia
dc.subject Luminescència
dc.subject Treballs de fi de grau
dc.subject Nanotechnology
dc.subject Energy transfer
dc.subject Luminescence
dc.subject Bachelor's theses
dc.title Towards the Reversible Electronic Energy Transfer. Synthesis and characterization of nanohybrid Quantum Dots
dc.title Cap a la Transferència d’Energia Electrònica Reversible. Síntesi i caracterització de punts quàntics nanohíbrids
dc.type info:eu-repo/semantics/bachelorThesis


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